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961.
在地理信息技术的支持下,修正单纯的权重叠加法,采用潜力-限制性分析法分析了兰州新区建设用地的生态潜力和生态阻力,对其生态适宜性做出科学评价,得到兰州新区可用作建设用地的理想区域。结果表明:(1)兰州新区建设用地开发的生态潜力总体以一级为主,二级次之,三级和四级区所占比重较小;(2)一级生态阻力主要分布在新区南部山地,主要表现为地形复杂、工程地质条件差、地质灾害发生频繁等;(3)兰州新区建设用地生态适宜性达一级的面积所占比重最大,为39 425.91 hm2,占新区总面积的48.91%。三级适宜区面积最小,仅为6 513.2 hm2,占新区总面积的8.08%。对应于生态适宜性评价结果,兰州新区土地应用可划分为集中建设区、重点开发区、限制建设区和禁止建设区。其中,集中建设区和重点建设区应为兰州新区建设用地开发的理想区域。  相似文献   
962.
Elevated As concentrations in groundwater of the Huhhot basin (HB), Inner Mongolia, China, and the western Bengal basin (WBB), India, have been known for decades. However, few studies have been performed to comprehend the processes controlling overall groundwater chemistry in the HB. In this study, the controls on solute chemistry in the HB have been interpreted and compared with the well-studied WBB, which has a very different climate, physiography, lithology, and aquifer characteristics than the HB. In general, there are marked differences in solute chemistry between HB and WBB groundwaters. Stable isotopic signatures indicate meteoric recharge in the HB in a colder climate, distant from the source of moisture, in comparison to the warm, humid WBB. The major-ion composition of the moderately reducing HB groundwater is dominated by a mixed-ion (Ca–Na–HCO3–Cl) hydrochemical facies with an evolutionary trend along the regional hydraulic gradient. Molar ratios and thermodynamic calculations show that HB groundwater has not been affected by cation exchange, but is dominated by weathering of feldspars (allitization) and equilibrium with gibbsite and anorthite. Mineral weathering and mobilization of As could occur as recharging water flows through fractured, argillaceous, metamorphic or volcanic rocks in the adjoining mountain-front areas, and deposits solutes near the center of the basin. In contrast, WBB groundwater is Ca–HCO3-dominated, indicative of calcite weathering, with some cation exchange and silicate weathering (monosiallitization).  相似文献   
963.
To study the deep dynamic mechanism leading to the difference in rifting pattern and basin structure from shelf to oceanic basin in passive continental margin,we constructed long geological sections across the shelf,slope and oceanic basin using new seismic data.Integrated gravity-magnetic inversion and interpretation of these sections were made with the advanced dissection method.Results show that the basement composition changes from intermediate-acid intrusive rocks in the sheff to intermediate-basic rocks in the slope.The Moho surface shoals gradually from 31 km in the sheff to 22.5 km in the uplift and then 19 km in the slope and finally to 13 km in the oceanic basin.The crust thickness also decreases gradually from 30 km in the northern fault belt to 9 km in the oceanic basin.The crustal stretching factor increases from the shelf toward the oceanic basin,with the strongest extension under the sags and the oceanic basin.The intensity of mantle upwelling controlled the style of basin structures from sheff to oceanic basin.In the Zhu 1 depression on the shelf,the crust is nearly normal,the brittle and cold upper crust mainly controlled the fault development;so the combinative grabens with single symmetric graben are characteristic.In the slope,the crust thinned with a large stretching factor,affected by the mantle upwelling.The ductile deformation controlled the faults,so there developed an asymmetric complex graben in the Baiyun (白云) sag.  相似文献   
964.
GPS网平差观测量选取的理论分析   总被引:1,自引:0,他引:1  
由多台GPS接收机在不同时段进行静态观测而组成的观测网形,当采用高精度的科研软件与常用商用软件解算基线时,其基线向量的方差阵不同,前者的方差阵结构是完全的、严密的。同时,在进行GPS网平差时,选取GPS基线的方式及数量的不同,构造的网形也就不同,采用不同的数学模型其得到的平差结果和精度指标也不相同。文章先从理论上进行分析,后用示例进行比较论证。  相似文献   
965.
The cometary disconnection event (DE) is the separation of the entire cometary tail or a part of it from the cometary head. It is one of the most spectacular phenomena of comets. The driving mechanism remains unclear, and at present there are many competitive theories to explain the onset of DE. However, the variable solar wind is suspected to play a major role. Comet Lulin exhibited a DE on 4th Feb. 2009. The data around this date are analyzed, and it is found that the comet Lulin had already endured a DE on 3rd Feb. 2009. By comparing the morphologies of the plasma tails in these two DEs, it is concluded that the DE which occurred on 3rd Feb. 2009 is another DE, which is distinct from that of 4th Feb. 2009. In this paper, we describe the results of analysis on the DE dated 3rd Feb. 2009. The measured velocity of disconnection motion is about 68 km/s, and the calculated onset time of this DE is 3.635 ± 0.215 Feb. 2009 in UT decimal date. Combining the orbital characteristics of Comet Lulin before and after the DE occurrence and the solar-wind data measured by the STEREO-A spacecraft, it is concluded that the DE which occurred on 3rd Feb. 2009 was probably caused by the magnetic reconnection due to the interaction between the comet and a coronal mass ejection (CME).  相似文献   
966.
Diapycnal Mixing (DM) within the upper 2000m of the global ocean is calculated by a fine-scale parameterization using the multiyear-mean density gridded product that created by employing all the Argo float observations to date through the recently published equation of seawater TEOS-10. The geographic distribution of Argo-derived DM derived in this study is spatial-dependent and varies with latitude and depth. The magnitude and pattern of DM is favorably validated by comparisons with previous studies. Furthermore, the mixing coefficient tensor K is calculated and analyzed. Components of the tensor fitting for the geopotential coordinate models are also presented. It is found that the tensor components in horizontal direction, Kxx and Kyy, have similar magnitude and distribution pattern. In the vertical, Kzz is enhanced over regions with rough topography and strong wind (e.g., Westerly region), suggesting agreement with previous estimates. This work presents a scheme to estimate the DM and mixing coefficient tensor using Argo observations, and offers a useful Argo-based mixing product for the purpose of promoting the study and modeling of ocean circulation and other processes.  相似文献   
967.
海州湾连云港邻近水域蟹类的分布特征   总被引:1,自引:0,他引:1  
本文根据2009年5月、9月和12月海州湾水域生物资源的调查资料,分析了海州湾水域蟹类资源密度的分布,多样性及蟹类优势种对蟹类数量分布的影响。结果表明,5月、9月和12月蟹类质量密度分别为36.15、53.85和44.91kg/km2,尾数密度为6.33×103、3.13×103和35.88×103ind./km2。5月、9月和12月蟹类以质量计算的物种多样性分别是0.95、0.64和0.65,以尾数计算的物种多样性分别是0.96、1.01和0.61。海州湾水域以广温广盐性蟹类为主,5月、9月和12月的最重要的优势种分别为双斑蟳(Charybdis bimaculata)、日本蟳(Charybdis japonica)和豆形短眼蟹(Xenophthalmus pin-notheroides)。春季蟹类的密度分布规律不明显;秋季蟹类的密度分布除湾外个别站位很高之外,其余站位分布均匀;冬季蟹类的密度分布沿岸稍高于湾外。季节变化很大程度上影响了优势种的改变。不同季节,蟹类优势种类的绝对优势,使得蟹类多样性平面分布与蟹类密度分布存在差异。  相似文献   
968.
石林  解广轰 《极地研究》1995,7(3):47-55
本文对采自南极罗斯岛及泰勒谷的新生代火山岩(包括鸟角碱玄岩、伊万思角歪长粗面响岩、罗德角碱玄响岩、克雷特山碱玄岩、碧玄岩博尼湖南岸碧玄岩)中的微量元素、稀土元素及同位素进行了系统的研究。查明研究区的火山岩未遭受地壳混染;证实它们可能来自两种不同的地幔源区。在岩浆演化方式上两套岩石也有所不同,碱玄岩和碧玄岩以地幔平衡部分熔融作用为主,而粗面响岩、碱玄响岩则以分离结晶作用为主。地幔部分熔融度为1.46~3.57%。最后对该区地幔的性质进行了初步讨论  相似文献   
969.
采用MAP-CGE模型,模拟了我国水泥行业实施低碳水泥标准对不同生产工艺产出、能耗及污染排放的影响,测算了对其边际减排成本和均衡价格的影响,分析了对不同污染物的协同减排效果。模拟结果表明:实施低碳水泥标准有利于水泥生产工艺的升级换代,并有助于水泥行业节能减排;在现有技术水平下,水泥行业在减排1 t CO2的同时将带来约1.17 kg的SO2减排量和4.44 kg的NOx减排量;实施低碳水泥标准对于水泥行业控制NOx排放很有利;但水泥行业也需承担减排成本并导致其均衡价格的小幅上升。  相似文献   
970.
Monitoring of subsurface fluid (underground fluid) is an important part of efforts for earthquake prediction in China. The nationwide network, which monitors groundwater level, water temperature, and radon and mercury in groundwater, has been constructed in the last decades. Large amounts of abnormal fluid changes before and after major earthquakes have been recorded, providing precious data for research in earthquake sciences. Many studies have been done in earthquake fluid hydrogeology in order to probe the nature of the earthquake. Much progress in earthquake fluid hydrogeology has been made in the last decades. The paper provides a review of the advances in research on earthquake fluid hydrogeology over the last 40 years in China. It deals with the following five aspects: (1) an introduction to the development history of monitoring networks construction; (2) cases of different subsurface fluid changes recorded before some major earthquakes which occurred in the last decades; (3) characteristics of subsurface fluid changes following major earthquakes; (4) mechanism of subsurface fluid changes before and following earthquakes; (5) application of earthquake fluids in the hydrogeology field.  相似文献   
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